Feeding mechanism for guide pipe granule production
By setting up a side brace and a vibration supply mechanism at the spiral loader material box, the vibration dispersed material is used to vibrate the problem of low feed efficiency of the spiral loader, and efficient automatic feeding is achieved, reducing manual intervention.
Patent Information
- Application Number
- CN202421720354.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-07-19
AI Technical Summary
In the prior art, during the production process of conduit pellets, the screw feeder is difficult to twist into the material due to the high compaction density of the material in the material box, and the feeding efficiency is low. It requires workers to stir the animal material manually, which is laborious and inefficient.
A side brace and a vibration supply mechanism are installed at the feed box of the spiral feeder. The vibration motor is used to drive components such as the T-shaped pallet and U-shaped guide plate to provide elastic vibration support, forcing the material to disperse and quickly enter the blanking pipe through the vibration force.
It realizes efficient feeding of raw materials for the production of conduit pellets without manual agitation, improves feeding efficiency, avoids material residues, and improves production efficiency.
Smart Images

Figure CN223302015U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of production and feeding of conduit granular materials, in particular to a feeding mechanism for the production of conduit granular materials. Background Art
[0002] PVC material is polyvinyl chloride, which is one of the world's most produced plastic products. It is cheap and widely used. Polyvinyl chloride resin is a white or light yellow powder and cannot be used alone. It must be modified. PVC is an amorphous white powder with a small degree of branching and poor stability to light and heat. Different additives can be added according to different uses. Polyvinyl chloride plastic can exhibit different physical and mechanical properties. PVC material is used as the raw material for catheter pellets. During the production process, a feeding device is usually used for production and feeding.
[0003] When the existing technology uses a spiral feeder to load the catheter pellet production materials, PVC materials and auxiliary materials as catheter pellet production materials will be placed in the material box of the spiral feeder, and then the production materials will be sent to the catheter pellet production machine with the help of the spiral feeder's auger and pipeline. However, when the spiral feeder's material box is in a state of dumping a large amount of catheter pellet production materials for loading, the stacking density between the materials is high, which makes it difficult for the auger pipeline of the spiral feeder to entangle the catheter pellet production materials, resulting in low feeding efficiency during catheter pellet production. For this problem, workers usually use metal rods to manually stir the materials, but it is laborious for workers to stir the materials manually. For this reason, we propose a feeding mechanism for catheter pellet production. Utility Model Content
[0004] The main purpose of the present invention is to provide a feeding mechanism for the production of conduit pellets, and side support cylinders and a vibration feeding mechanism are arranged at the material box of the spiral feeder body. The T-shaped support plate of the vibration feeding mechanism can obtain elastic vibration support at the material box of the spiral feeder body, and the frame structure of the vibration feeding mechanism contacts the conduit pellet production raw materials under the influence of the vibration of the vibration motor. The conduit pellet production raw materials in the material box of the spiral feeder body are forced to disperse by the vibration force, so that the conduit pellet production raw materials can quickly enter the drop pipe along the guide ring from the material box of the spiral feeder body, which facilitates the efficient feeding of the conduit pellet production raw materials at the spiral feeder body, and does not require workers to manually stir the conduit pellet production raw materials in the spiral feeder body, which can effectively solve the problems in the background technology.
[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0006] A feeding mechanism for the production of conduit granular materials, comprising a spiral feeder body, a feeding pipe and a drop pipe, wherein the feeding pipe is installed at the bottom of the spiral feeder body, and the drop pipe is welded between the material box of the spiral feeder body and the feeding pipe, and further comprising a side support cylinder, a spring and a vibration feeding mechanism, wherein the vibration feeding mechanism comprises a guide ring, a support plate, a U-shaped liner frame, a T-shaped support plate, a guide column, a through column, a vibration motor, a U-shaped guide plate, an L-shaped side dividing plate and a rake frame, and the side support cylinder for clamping the spring is symmetrically welded outside the material box of the spiral feeder body, and the spring The U-shaped support plate is a kind of T-shaped support plate, and the U-shaped support plate is a kind of T-shaped support plate. The U-shaped support plate is a kind of T-shaped support plate, and the U-shaped support plate is a kind of T-shaped support plate. The U-shaped support plate is a kind of T-shaped support plate, and the U-shaped support plate is a kind of T-shaped support plate. The U-shaped support plate is a kind of T-shaped support plate, and the U-shaped support plate is a kind of T-shaped support plate. The U-shaped support plate is a kind of T-shaped support plate, and the U-shaped support plate is a kind of T-shaped support plate.
[0007] Furthermore, the vertical plate of the U-shaped lining frame symmetrically rests against the inner box wall of the wide side of the material box of the spiral feeder body;
[0008] By adopting the above technical solution, the U-shaped lining frame can be supported on the inner box wall of the wide side of the material box of the spiral feeder body.
[0009] Furthermore, the vertical plate body of the U-shaped guide plate symmetrically abuts against the inner box wall of the long side of the material box of the spiral feeder body;
[0010] By adopting the above technical solution, the U-shaped guide plate can be supported on the inner box wall of the long side of the material box of the spiral feeder body.
[0011] Furthermore, the size of the guide post is the same as the diameter of the side support tube, and the guide post presses the spring to be clamped into the side support tube;
[0012] By adopting the above technical solution, the guide column can be clamped into the side support tube to compress the spring.
[0013] Furthermore, rake teeth are arranged and welded outside the frame rod of the rake frame, and the rake teeth outside the rake frame are symmetrically welded in six groups;
[0014] By adopting the above technical solution, more rake teeth are provided outside the frame rod of the rake frame and can contact the production raw materials of the conduit granular material.
[0015] Furthermore, the diameter of the guide ring is the same as the diameter of the lumen of the blanking tube;
[0016] By adopting the above technical solution, the guide ring can be adapted to be clamped into the drop tube for installation.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] The utility model provides a side support cylinder and a vibration feeding mechanism at the material box of the screw feeder body, so that the T-shaped supporting plate of the vibration feeding mechanism can obtain elastic vibration support at the material box of the screw feeder body, and the frame structure of the vibration feeding mechanism contacts the duct granular production raw materials under the influence of the vibration of the vibration motor, and the duct granular production raw materials in the material box of the screw feeder body are forced to disperse by the vibration force, so that the duct granular production raw materials can quickly enter the drop pipe along the guide ring from the material box of the screw feeder body, which facilitates the efficient feeding of the duct granular production raw materials at the screw feeder body, and does not require workers to manually stir the duct granular production raw materials in the screw feeder body;
[0019] And there is a vibration feeding mechanism to provide vibration at the material box of the screw feeder body, so that the inner wall of the material box of the screw feeder body is in a vibrating state, thereby ensuring that the duct granular production raw materials are not easy to slide off the inner wall of the material box and are vibrated into the feeding pipe under the drop pipe for feeding, so that it is not easy for material to remain on the inner wall of the material box of the screw feeder body. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the overall structure of a feeding mechanism for producing conduit granular materials in the utility model.
[0021] Figure 2 This is a schematic diagram of the disassembly of the vibration feeding mechanism and the side support cylinder of a feeding mechanism for producing ducted granular materials in the utility model.
[0022] Figure 3 This is an exploded view of a feeding mechanism for producing granular materials in a conduit according to the present invention.
[0023] In the figure: 1. Screw feeder body; 2. Feeding pipe; 3. Dropping pipe; 4. Side support cylinder; 5. Spring; 6. Vibration feeding mechanism; 7. Guide ring; 8. Support plate; 9. U-shaped liner frame; 10. T-shaped support plate; 11. Guide column; 12. Through column; 13. Vibration motor; 14. U-shaped guide plate; 15. L-shaped side dividing plate; 16. Rake frame. DETAILED DESCRIPTION
[0024] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0025] like Figure 1-3As shown, a feeding mechanism for the production of conduit granular materials includes a spiral feeder body 1, a feeding pipe 2 and a drop pipe 3. The feeding pipe 2 is installed at the bottom of the spiral feeder body 1, and the drop pipe 3 is welded between the material box of the spiral feeder body 1 and the feeding pipe 2. It also includes a side support cylinder 4, a spring 5 and a vibration feeding mechanism 6. The vibration feeding mechanism 6 includes a guide ring 7, a support plate 8, a U-shaped liner frame 9, a T-shaped support plate 10, a guide column 11, a through column 12, a vibration motor 13, a U-shaped guide plate 14, an L-shaped side dividing plate 15 and a rake frame 16. The side support cylinder 4 for clamping the spring 5 is symmetrically welded outside the material box of the spiral feeder body 1. 5 is inserted into the through-column 12 welded below the guide column 11, and the guide column 11 is symmetrically welded at both ends of the plate body of the T-shaped support plate 10, a U-shaped liner 9 is welded below the long plate body of the T-shaped support plate 10, and a support plate 8 is welded at the lower frame rod of the U-shaped liner 9, and a guide ring 7 for clamping the drop tube 3 is welded in the center of the lower plate surface of the support plate 8, and a U-shaped guide plate 14 is welded on the upper plate surface of the support plate 8 away from the guide ring 7, and an L-shaped side split plate 15 is welded on the surface of the support plate 8 outside the U-shaped guide plate 14, and a rake 16 is welded on the surface of the vertical plate body of the L-shaped side split plate 15 and the U-shaped guide plate 4, and a vibration motor 13 is installed on the convex plate surface of the T-shaped support plate 10.
[0026] The vertical plate of the U-shaped lining frame 9 is symmetrically pressed against the inner wall of the wide side of the material box of the spiral feeder body 1;
[0027] By adopting the above technical solution, the U-shaped lining frame 9 can be supported on the inner box wall of the wide side of the material box of the spiral feeder body 1.
[0028] The vertical plate of the U-shaped guide plate 14 is symmetrically pressed against the inner wall of the long side of the material box of the spiral feeder body 1;
[0029] By adopting the above technical solution, the U-shaped guide plate 14 can be supported on the inner box wall of the long side of the material box of the spiral feeder body 1.
[0030] The guide column 11 has the same size as the diameter of the side support tube 4, and the guide column 11 presses the spring 5 to be inserted into the side support tube 4.
[0031] By adopting the above technical solution, the guide column 11 can be inserted into the side support tube 4 to compress the spring 5 .
[0032] The rake teeth are welded outside the frame rod of the rake frame 16, and the rake teeth outside the rake frame 16 are symmetrically welded in six groups;
[0033] By adopting the above technical solution, more rake teeth are provided outside the frame rod of the rake frame 16 to contact the production raw materials of the conduit granular material.
[0034] The diameter of the guide ring 7 is the same as the diameter of the lumen of the blanking tube 3;
[0035] By adopting the above technical solution, the guide ring 7 can be adapted to be clamped into the blanking tube 3 for clamping.
[0036] The U-shaped support plate 10 is connected to the feeding tube 3 and the feeding tube 3 is connected to the feeding tube 3, and the feeding tube 3 is connected to the feeding tube 3. The U-shaped liner 9 vibrates with the support plate 8, carrying the U-shaped guide plate 14 and the L-shaped side dividing plate 15. The vertical plate bodies of the U-shaped guide plate 14 and the L-shaped side dividing plate 15 are provided with a rake 16 which can contact the conduit granular production raw materials for vibration, and when the T-shaped support plate 10 of the vibration feeding mechanism 6 vibrates, the T-shaped support plate 10 presses the guide column 11 and the through column 12 and bounces slightly above the spring 5 of the side support tube 4, so that the T-shaped support plate 10 and the U-shaped liner 9 of the vibration feeding mechanism 6 can vibrate better elastically. Under the influence of the vibration of the vibration feeding mechanism 6, the material box of the spiral feeder body 1 is forced to disperse the conduit granular production raw materials by the vibration force, so that the conduit granular production raw materials can quickly enter the drop pipe 3 from the material box of the spiral feeder body 1 along the guide ring 7, and then the spiral auger structure at the feeding pipe 2 transports the conduit granular production raw materials upward to the conduit granular production equipment for production.
[0037] It should be noted that the present invention is a feeding mechanism for the production of conduit pellets. The components in the present invention are all components known to those skilled in the art, and their structures and principles can be known to those skilled in the art through technical manuals or conventional experimental methods.
[0038] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in this invention is defined by the appended claims and their equivalents.
Claims
1. A feeding mechanism for producing conduit granular materials, comprising a spiral feeder body (1), a feeding pipe (2) and a blanking pipe (3), wherein the feeding pipe (2) is installed at the bottom of the spiral feeder body (1), and a blanking pipe (3) is welded between the material box of the spiral feeder body (1) and the feeding pipe (2), characterized in that: The invention also includes a side support cylinder (4), a spring (5) and a vibration feeding mechanism (6), wherein the vibration feeding mechanism (6) includes a guide ring (7), a support plate (8), a U-shaped lining frame (9), a T-shaped support plate (10), a guide column (11), a through column (12), a vibration motor (13), a U-shaped guide plate (14), an L-shaped side dividing plate (15) and a rake frame (16), and a side support cylinder (4) for clamping the spring (5) is symmetrically welded outside the material box of the spiral feeder body (1), and a through column (12) welded below the guide column (11) is inserted into the spring (5), and the guide column (11) is symmetrically welded to both ends of the plate body of the T-shaped support plate (10). A U-shaped lining frame (9) is welded below the long plate body of the T-shaped support plate (10), and a support plate (8) is welded at the lower frame rod of the U-shaped lining frame (9), a guide ring (7) for clamping the drop tube (3) is welded in the center of the lower plate surface of the support plate (8), and a U-shaped guide plate (14) is welded on the upper plate surface of the support plate (8) away from the guide ring (7), an L-shaped side split plate (15) is welded on the surface of the support plate (8) outside the U-shaped guide plate (14), and a rake frame (16) is welded on the surface of the vertical plate body of the L-shaped side split plate (15) and the U-shaped guide plate (14), and a vibration motor (13) is installed on the central convex plate surface of the T-shaped support plate (10).
2. A feeding mechanism for producing conduit pellets according to claim 1, characterized in that: The vertical plate body of the U-shaped lining frame (9) is symmetrically pressed against the inner box wall of the wide side of the material box of the spiral feeder body (1).
3. A feeding mechanism for producing conduit pellets according to claim 1, characterized in that: The vertical plate body of the U-shaped guide plate (14) is symmetrically pressed against the inner box wall of the long side of the material box of the spiral feeder body (1).
4. The feeding mechanism for producing conduit pellets according to claim 1, characterized in that: The column size of the guide column (11) is the same as the diameter of the cylinder cavity of the side support cylinder (4), and the guide column (11) presses the spring (5) to be clamped into the side support cylinder (4).
5. The feeding mechanism for producing conduit pellets according to claim 1, characterized in that: Rake teeth are arranged and welded outside the frame rod of the rake frame (16), and the rake teeth outside the rake frame (16) are symmetrically welded in six groups.
6. A feeding mechanism for producing conduit pellets according to claim 1, characterized in that: The ring body diameter of the guide ring (7) is the same as the lumen diameter of the blanking tube (3).